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小森 省吾 様の 共著関連データベース

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+(A list of literatures under single or joint authorship with "小森 省吾")

共著回数と共著者名 (a list of the joint author(s))

    105: 小森 省吾

    44: 鍵山 恒臣

    38: 宇津木 充

    25: 井上 寛之

    21: 神田 径

    19: 高倉 伸一

    12: 小山 崇夫, 小川 康雄

    11: 田中 良和

    10: 吉村 令慧, 橋本 武志

    9: 横田 俊之, 正木 裕香, 熊谷 英憲

    8: 山崎 友也, 星住 英夫, 石橋 純一郎, 野崎 達生

    7: 前田 玲奈, 寺田 暁彦

    6: 井上 直人, 浅野 剛

    5: スリグトモ ワヒュー, 原田 昌武, 吉川 慎, 安田 陽二郎, 山崎 徹, 後藤 忠徳, 本多 亮, 梅澤 良介, 池原 研, 行竹 洋平, 谷 昌憲, 谷川 亘

    4: 佐藤 泉, 光畑 裕司, 加茂 正人, 園田 忠臣, 徳本 直明, 陳 中華, 鳥本 淳司

    3: CK16-05乗船者一同, フェアリー ジェリー, 万沢 かりん, 三村 衛, 上田 匠, 佐竹 海, 北田 数也, 大志万 直人, 大沢 信二, 大田 優介, 宮川 歩夢, 小豆畑 逸郎, 山本 浩文, 山田 泰広, 岡田 靖章, 村北 貴郁, 槙尾 雅人, 江 協堂, 牧野 雅彦, 真田 佳典, 神宮司 元治, 長瀬 敏郎, 高谷 雄太郎

    2: CK16-01乗船者一同, FAIRLEY Jelly, FAIRLEY Jerry, MCINTOSH Iona, 中塚 正, 井口 正人, 南出 奏, 原田 誠, 坂中 伸也, 大熊 茂雄, 大野 正夫, 小林 宰, 山崎 健一, 山田 健太, 山谷 祐介, 志賀 信彦, 杉崎 真幸, 浅田 美穂, 相澤 広記, 石川 秀浩, 荒井 英一, 趙 丰, 金子 雅紀, 長町 信吾, 風早 竜之介, 髙橋 幸士

    1: Benjamin Fong Chao, CHAO Benjamin fong, CHAO Benjaming Fong, CHEN Chieh-Hung, CK16-01 Leg2 乗船者一同, CK16-05 航海乗船者一同, CK16-05航海 乗船者一同, HURST Tony, KAKDA Kret, KRET Kakda, ジェリー フェアリー, ワヒュー スリグトモ, 三島 壮智, 上村 建人, 上田 哲士, 井 智史, 井上 卓彦, 井出 健斗, 井口 慶昭, 井手 健斗, 仲井 亮平, 伊藤 忍, 伊藤 直毅, 住田 達哉, 佐藤 颯哉, 内出 崇彦, 内田 利弘, 冨田 昇平, 加茂 正 人, 加藤 洋介, 喜多村 陽, 増田 一夫, 多田井 修, 大久保 綾子, 大湊 隆雄, 大田 雄介, 大石 雅之, 宇内 克成, 安田 敦, 山崎 明, 山本 和哉, 嶋本 利彦, 川口 慎介, 市川 雅之, 後藤 秀作, 御内 祐子, 戸塚 修平, 押田 淳, 斎藤 誠史, 有田 真, 本多 嘉明, 杉野 由樹, 松島 喜雄, 柳田 誠, 桜島電磁気構造探査グループ, 渡部 蒼, 濱田 洋平, 為栗 健, 田中 明子, 町山 栄章, 石原 和弘, 石塚 治, 笠谷 貴史, 茂木 透, 落 唯史, 藤井 郁子, 越田 渓子, 金子 純二, 金子 隆之, 長浦 善之, 飯島 耕一, 高山 鉄朗, 高橋 幸祐, 黒田 清一郎, 齋藤 誠史


発行年とタイトル (Title and year of the issue(s))

    2005: 八丁原・大岳地熱地帯における地下浸透率構造の推定 (J064 P003) [Net] [Bib]
    Estimation of Underground Permeability Structure of Hacchobaru and Ohtake Geothermal Areas (J064 P003) [Net] [Bib]

    2006: 九重火山における浅部比抵抗構造の推定(E134 P008) [Net] [Bib]
    Shallow resistivity structure of Kuju volcano, central Kyushu (E134 P008) [Net] [Bib]

    2006: 九重硫黄山における浅部比抵抗構造(2)(A003 P005) [Net] [Bib]
    Shallow resistivity structure of the Kuju volcano (2)(A003 P005) [Net] [Bib]

    2006: 雲仙火山北東部における浅部比抵抗構造と熱水の流れ [Net] [Bib] [Doi]
    Resistivity Structure and Flow of Hot Fluid in The Northeast of Unzen Volcano [Net] [Bib] [Doi]

    2006: 雲仙火山北東部における熱水の移動(V101 P021) [Net] [Bib]
    The transference of geothermal solution in the northeast of the Unzen volcano (V101 P021) [Net] [Bib]

    2007: 火山体浅部における比抵抗構造と熱水 [Net] [Bib]
    The Relationship between Resistivity Structures and Geothermal Fluids in the Shallow Part of a Volcano [Net] [Bib]

    2007: 火山体浅部における比抵抗構造と熱水(11 P 90) [Net] [Bib]

    2007: 火山体浅部における比抵抗構造と熱水(V237 011) [Net] [Bib]
    The relation of resistivity structure and geothermal solution in the shallow of the volcano(V237 011) [Net] [Bib]

    2008: 2007年度桜島集中観測 電磁気構造探査序報 [Net] [Bib]
    Jouint Observation Campaign of Sakurajima Volcano in 2007 A preliminary report of EM field experiments [Net] [Bib]

    2008: 火山体浅部における比抵抗構造と熱水流動との関係(V170 002) [Net] [Bib]
    Relation between GeothermalWater Flow and Resistivity Structure in the Shallow Part of the Volcano(V170 002) [Net] [Bib]

    2008: 火山周辺の電気伝導度分布への火山ガス散逸の寄与 [Net] [Bib] [Doi]
    Contribution of the dissipation of volcanic gases to the spatial conductivity distribution around volcanoes [Net] [Bib] [Doi]

    2008: 雲仙火山北東部における浅部低比抵抗域と熱水の関係 [Net] [Bib] [Doi]
    Relation beween High Temperature and Low Resistivity in the Shallow Part of the Northeastern Foot of Unzen Volcano [Net] [Bib] [Doi]

    2009: マグマの脱ガスが火山体の電気伝導度構造に与える影響の定量的検討(V227 003) [Net] [Bib]
    Quantitative examination of the effect of magma degassing on the electrical conductivity structure of a volcano(V161 003) [Net] [Bib]

    2009: 九重硫黄山周辺の浅部比抵抗構造(V161 P005) [Net] [Bib]
    A shallow resistivity structure of Kuju volcano, central Kyushu, Japan(V161 P005) [Net] [Bib]

    2009: 広帯域MT観測から得られた阿蘇カルデラの比抵抗構造(V227 005) [Net] [Bib]
    Resistivity structure of the Aso Caldera using wideband magnetotelluric method(V227 005) [Net] [Bib]

    2009: 火山体浅部における比抵抗構造と熱水の比抵抗の定量的関係 雲仙火山北東部USDP 1掘削サイトを例に [Net] [Bib] [Doi]
    Quantitative relation between resistivity structure and resistivity of hydrothermal fluid in the shallow part of a volcano: A case study of the USDP 1 drilling site in the northeastern foot of Unzen Volcano, SW Japan [Net] [Bib] [Doi]

    2009: 阿蘇米塚スコリア丘の内部構造と形成過程(V160 004) [Net] [Bib]
    On the inner structure and formation process of Komezuka scoria cone, Aso volcano(V160 004) [Net] [Bib]

    2009: 霧島火山群・硫黄山周辺における熱的活動の縮退に対応した比抵抗構造の変化(V161 P004) [Net] [Bib]
    Change in Resistivity structure related with the decrease of thermal activity around Iwo Yama, Kirishima Volcanoes(V161 P004) [Net] [Bib]

    2010: MT法を用いた鶴見・伽藍火山周辺域における地下比抵抗構造調査 [Net] [Bib]

    2010: マグマの脱ガスが火山の電気伝導度構造に与える影響の定量的関係(2) 熱の影響について (SVC061 04) [Net] [Bib]
    Quantitative examination of the effect of magma degassing on the electrical conductivity structure of a volcano(SVC061 04) [Net] [Bib]

    2010: 広帯域MT観測による雲仙普賢岳における2次元比抵抗構造の推定(ポスターセッション)(演旨) [Net] [Bib] [Doi]
    2 D resistivity structure beneath Unzen Fugen dake Volcano revealed by wideband MT survey [Net] [Bib] [Doi]

    2010: 火山体浅部における,バルク比抵抗に対する熱水流体と熱水変質の寄与の定量的検討 雲仙火山北東部USDP 1サイトを例に (SEM031 P12) [Net] [Bib]
    The Contribution of Hydrothermal Fluid and Hydrothermal Alteration to the Bulk Resistivity: a case study of USDP 1 site(SEM031 P12) [Net] [Bib]

    2011: 台湾・大屯火山群におけるAMT観測(SVC049 P05) [Net] [Bib]
    Audio frequency Magneto Telluric survey on Tatun Volcanic group, Taiwan(SVC049 P05) [Net] [Bib]

    2011: 火山における熱水がマトリックス電気伝導度に与える影響の定量的検討(A003 P008) [Net] [Bib]
    Quantitative examination of the effect of hydrothermal fluids on matrix conductivity of volcanic edifice (A003 P008) [Net] [Bib]

    2011: 火山体の電気伝導度構造を用いた揮発性物質フラックス推定の試み 阿蘇火山への適用 [Net] [Bib] [Doi]
    Approach to evaluating mass flux of volcanic fluids using the electrical conductivity structure of a volcano: a case study of Aso Volcano [Net] [Bib] [Doi]

    2011: 火山体の電気伝導度構造を用いた揮発性物質フラックス推定の試み 雲仙火山を例に [Net] [Bib]
    Approach to evaluating mass flux of volcanic fluids using the electrical conductivity structure of a volcanno: a case study of Unzen volcano [Net] [Bib]

    2011: 火山体の電気伝導度構造を用いた揮発性物質フラックス推定の試み(SVC049 04) [Net] [Bib]
    Approach to evaluating mass flux of volcanic fluids using the electrical conductivity structure of a volcano(SVC049 04) [Net] [Bib]

    2011: 阿蘇火山中岳周辺のACTIVE探査による浅部比抵抗の時間変化 [Net] [Bib] [Doi]
    Temporal change of electrical resistivity inferred from ACTIVE system around Naka dake crater, Aso volcano [Net] [Bib] [Doi]

    2011: 霧島火山群周辺の表層電気伝導度分布 [Net] [Bib] [Doi]
    Conductivity distribution of the surface layer around Kirishima Volcanic Group [Net] [Bib] [Doi]

    2012: ACTIVE観測による阿蘇火山中岳周辺の浅部比抵抗の時間変化 [Net] [Bib] [Doi]
    Temporal change of electrical resistivity inferred from ACTIVE system, around Naka dake crater, Aso volcano [Net] [Bib] [Doi]

    2012: Active観測から見た阿蘇中岳火口周辺の浅部比抵抗変化 [Net] [Bib]
    Temporal resistivity changes beneath Nakadake crater, Aso volcano inferred from ACTIVE monitoring system [Net] [Bib]

    2012: 広帯域MT観測から推定される阿蘇火山の比抵抗構造(SVC50 P23) [Net] [Bib]
    The electrical resistivity structure of Aso volcano inferred from broadband MT surveys(SVC50 P23) [Net] [Bib]

    2012: 桜島火山におけるくり返し空中磁気観測(2007年 2011年)(SVC50 P05) [Net] [Bib]
    Repeated aeromagnetic survey on Sakurajima Volcano(2007 2011)(SVC50 P05) [Net] [Bib]

    2012: 桜島火山におけるくり返し空中磁気観測(2007 2011年) [Net] [Bib] [Doi]
    Repeated aeromagnetic survey on Sakurajima volcano (2007 2010) [Net] [Bib] [Doi]

    2012: 桜島火山における浅部比抵抗構造調査2011(SVC50 P06) [Net] [Bib]
    Audio frequency magnetotelluric survey of Sakurajima volcano in 2011(SVC50 P06) [Net] [Bib]

    2012: 桜島火山の三次元浅部比抵抗構造 [Net] [Bib] [Doi]
    Shallow 3 D resistivity structure of Sakurajima volcano [Net] [Bib] [Doi]

    2012: 火山体の電気伝導度構造を利用した揮発性物質フラックスの推定 活動様式の異なる火山間の比較 (SVC49 P06) [Net] [Bib]
    Evaluation of the mass flux of volcanic fluids using the electrical condutivity structure(SVC49 P06) [Net] [Bib]

    2012: 箱根における誘発地震活動域周辺でのAMT観測(SSS31 P09) [Net] [Bib]
    AMT observations over the remotely triggered seismicity in Hakone volcano(SSS31 P09) [Net] [Bib]

    2012: 箱根地震活動域周辺でのAMT観測 序報 [Net] [Bib]
    AMT Observations over the Seismic Active Region in Hakone Volcano Preliminary Results [Net] [Bib]

    2012: 箱根地震活動域周辺の3次元比抵抗モデリング(A003 P002) [Net] [Bib]
    Three dimensional resistivity modeling around the seismic active region in Hakone volcano(A003 P002) [Net] [Bib]

    2012: 電気伝導度構造を用いた揮発性物質フラックス推定の試み 手法の改良と火山地域への適用 [Net] [Bib] [Doi]
    Development of the method to evaluate the mass flux of volcanic fluids using the electrical conductivity structure: Improvement of the method and application to the volcanic fields [Net] [Bib] [Doi]

    2012: 電気伝導度構造を用いた揮発性物質放出フラックス推定法の開発と阿蘇火山への適用例 [Net] [Bib]
    Development of a new method to evaluating the mass flux of the volcanic fluids using the electrical conductivity structure: a tentative application to Aso volcano [Net] [Bib]

    2012: 霧島火山群周辺の表層電気伝導度分布 噴火未遂の視点から (SVC49 02) [Net] [Bib]
    Conductivity distribution of the surface layer around Kirishima Volcanic Group on the aspect of failed eruptions(SVC49 02) [Net] [Bib]

    2013: 2011年阿蘇火山小規模噴火に伴う浅部比抵抗の時間変化について(SVC48 P10) [Net] [Bib]
    The temporal changes of the shallower resistivity structure associated with a small eruptions at Aso Volcano, 2011(SVC48 P10) [Net] [Bib]

    2013: AMT法による台湾北部、七星山・馬槽・大油坑地域における比抵抗構造調査(SVC52 P03) [Net] [Bib]
    Resistivity structure around Chishinshan, Matsao, and Tayukeng areas, Taiwan, revealed by audio magnetotellurics (SVC52 P03) [Net] [Bib]

    2013: AMT観測から推定される桜島火山の浅部比抵抗構造 [Net] [Bib] [Doi]
    Shallow Resistivity Structure of Sakurajima Volcano Revealed by Audio frequency Magnetotellurics [Net] [Bib] [Doi]

    2013: 台湾北部、七星山・馬槽・大油坑地域における浅部比抵抗構造 熱水流動形態との関係 [Net] [Bib] [Doi]
    Resistivity structure around Chishinshan volcano area in Tatun Volcano Group, northern Taiwan: Its relation to the flow of hydrothermal fluids [Net] [Bib] [Doi]

    2013: 桜島火山の三次元浅部比抵抗構造 [Net] [Bib]
    Three dimensional shallow resistivity structure of Sakurajima volcano [Net] [Bib]

    2013: 桜島火山の三次元浅部比抵抗構造(P19) [Net] [Bib]
    Three dimensional shallow resistivity structure of Sakurajima volcano (P19) [Net] [Bib]

    2013: 活火山周辺における表層電気伝導度分布(SVC52 P01) [Net] [Bib]
    Conductivity distribution of the surface layer active volcanos (SVC52 P01) [Net] [Bib]

    2013: 熱水変質が母岩の表面伝導度に与える影響の定量的検討 低温熱水系と(やや)高温熱水系との比較研究 [Net] [Bib] [Doi]
    Quantitative relation between the surface conductivity of rock matrix and the exposure temperature: comparative study between low and relatively high temperature hydrothermal systems [Net] [Bib] [Doi]

    2013: 箱根火山周辺の三次元比抵抗構造(SVC48 P26) [Net] [Bib]
    Three dimensional electrical resistivity structure around Hakone volcano, Japan (SVC48 P26) [Net] [Bib]

    2014: マグマの脱ガスが火山活動に与える影響の定量的評価に関する研究 [Net] [Bib]

    2014: マグマの脱ガスフラックス推定のための電気伝導度構造の利用(SEM36 04) [Net] [Bib]
    Electrical conductivity structures of volcanic areas: a proxy for volcanic gas fluxes (SEM36 04) [Net] [Bib]

    2014: 台湾北部・大屯火山群における熱水流体挙動の定量的評価に関する研究 [Net] [Bib] [Doi]
    Study on quantitative evaluation of hydrothermal fluid flow beneath Tatun Volcano Group, northern Taiwan [Net] [Bib] [Doi]

    2014: 比抵抗構造で見る台湾北部・大屯火山群の熱水系(SVC51 03) [Net] [Bib]
    Hydrothermal system at Tatun Volcano Group, northern Taiwan, inferred from resistivity structure (SVC51 03) [Net] [Bib]

    2014: 箱根火山周辺の比抵抗構造と東北地方太平洋沖地震に誘発された地震活動の関係(SSS31 03) [Net] [Bib]
    Relation between the resistivity structure around Hakone volcano and seismicity induced by the 2011 Tohoku Earthquake (SSS31 03) [Net] [Bib]

    2015: 地球統計学的手法に基づく、VLF MTによる表層比抵抗の分布特性の把握~台湾北部・大屯火山群を例に [Net] [Bib]
    Geostatistical approach to obtain features of surface resistivity distribution using VLF MT beneath Tatun Volcano Group, northern Taiwan [Net] [Bib]

    2015: 地球統計学的手法に基づく,VFLF MTによる表層比抵抗の分布特性の把握 台湾北部・大屯火山群を例に (SVC49 01) [Net] [Bib]
    Geostatistical analysis of VLF MT resistivity data at the Tatun Volcano Group, Taiwan (SVC49 01) [Net] [Bib]

    2015: 地球統計学的手法に基づく,VLF MT による表層比抵抗の分布特性の把握 台湾北部・大屯火山群を例に (P07) [Net] [Bib]
    Geostatistical approach to obtain features of surface resistivity distribution using VLF MT beneath Tatun Volcano Group, northern Taiwan (P07) [Net] [Bib]

    2015: 雌阿寒岳ポンマチネシリ火口浅部の比抵抗構造(P11) [Net] [Bib]

    2015: 鴨川低地断層帯周辺のAMT法による比抵抗構造(SEM33 P02) [Net] [Bib]
    AMT resistivity soundings across the Kamogawa teichi fault zone, Boso Peninsula (SEM33 P02) [Net] [Bib]

    2016: ちきゅう(CK16 01)航海における沖縄海底熱水域掘削試料の船上物性測定(R24 P 1) [Net] [Bib] [Doi]
    Results of Physical Property measurement obtained during the CHIKYU (CK16 01) cruise (R24 P 1) [Net] [Bib] [Doi]

    2016: 地球物理・化学データの融合的利用による火山活動の定量的理解 口永良部島火山のマグマ水蒸気噴火を例に (SVC47 P39) [Net] [Bib]
    Quantitative understanding of volcanic activities by a combinational use of geophysical and geochemical data a case study of magmatophreatic eruptions at Kuchierabu volcano, SW Japan (SVC47 P39) [Net] [Bib]

    2016: 掘削試料の電気特性が捉える海底熱水鉱床 比抵抗・IP特性の船上計則システムの開発・適用とその成果 [Net] [Bib]

    2016: 沖縄県沖海底熱水鉱床における掘削試料の比抵抗・IP特性 ちきゅうCK16 01航海 [Net] [Bib]
    Resistivity and IP characteristics of drill core samples from the seafloor hydrothermal systems in Okinawa, Japan (CHIKYU cruise CK16 01) [Net] [Bib]

    2016: 海底掘削試料の即時IP特性計測技術の開発 [Net] [Bib]

    2017: Results of physical property measurements obtained during the CHIKYU cruise CK16 05 of hydrothermal fields at the middle Okinawa Trough (SCG71 P01) [Net] [Bib]

    2017: VLF MTによる台湾北部・大屯火山群の表層比抵抗分布(最終報) [Net] [Bib] [Doi]
    Surface resistivity distribution of the Tatun Volcano Group, Northern Taiwan, revealed by VLF MT [Net] [Bib] [Doi]

    2017: 掘削試料の比抵抗・IP特性から見る沖縄県伊平屋北海丘および野甫サイト熱水域 ちきゅうCK16 01航海 (SCG71 17) [Net] [Bib]
    Electrical features of the submarine hydrothermal system around the Iheya North Knoll area and the Noho Site, Okinawa, Japan, inferred from resistivity and IP properties of drilling samples from the Chikyu CK16 01 cruise (SCG71 17) [Net] [Bib]

    2018: CK16 05航海 (Exp. 909) 伊是名海穴掘削コア試料の岩相ユニット区分および地震波探査との照合(R25 O 5) [Net] [Bib] [Doi]
    Lithological unit divisions of drill core samples obtained from the Izena Hole during the CK16 05 Cruise (Exp. 909) for collation with the vertical cable seismic survey (R25 O 5) [Net] [Bib] [Doi]

    2018: SIP「次世代海洋資源調査技術」における産総研の成果 [Net] [Bib]
    GSJ’s results of the Cross ministerial Strategic Innovation Promotion Program (SIP), “Next generation technology for ocean resources exploration” [Net] [Bib]

    2018: 伊是名海穴「次世代海洋資源調査技術」掘削コアの再検討にもとづいた対比 [Net] [Bib]
    Correlation of drilled cores at Izena Hole obtained by D/V Chikyu [Net] [Bib]

    2018: 伊是名海穴での掘削コアと検層の対比:「ちきゅう」掘削CK16 05(SCG61 10) [Net] [Bib]
    A correlation between logging and drilled cores at Izena Hole: CK16 05 D/V Chikyu drilling (SCG61 10) [Net] [Bib]

    2018: 伊是名海穴,海底熱水鉱床試料の電気物性 ちきゅう掘削CK16 05 [Net] [Bib]
    Electrical properties of submarine hydrothermal deposits in the Izena Hole, Japan (CHIKYU CK16 05 cruise) [Net] [Bib]

    2018: 平成29年度廣川研究助成事業報告(3)Near Surface Geoscience Conference & Exhibition 2017参加報告 [Net] [Bib]
    Report of the Hirokawa Research Fund in the 2017 fiscal year: trend survey of electromagnetic investigation techniques at Near Surface Geoscience Conference & Exhibition 2017 [Net] [Bib]

    2018: 時間領域空中電磁探査における探査震度・水平影響領域の簡易な把握手法の開発 [Net] [Bib]

    2018: 時間領域空中電磁探査における探査領域に関する研究(STT49 06) [Net] [Bib]
    A study on depth of investigation (DOI) and footprint of airborne time domain electromagnetic (TEM) surveys (STT49 06) [Net] [Bib]

    2018: 沖縄県宮古島・白川田水源における比抵抗・時間領域IP法を用いた空洞検出の試み(HTT19 18) [Net] [Bib]
    A feasibility study for detecting a cavity as a groundwater flow path using DC resistivity and TDIP surveys in Shikawada cold springs area, Miyako Island, Japan (HTT19 18) [Net] [Bib]

    2018: 海洋資源の成因の科学的研究に基づく調査海域絞込み手法の開発 戦略的イノベーション創造プログラム(SIP)「次世代海洋資源調査技術」における産総研地質調査総合センター(GSJ)の研究開発成果 [Net] [Bib] [Doi]
    Scientific research on formation processes of ocean resources: GSJ's research results of the Cross ministerial Strategic Innovation Promotion Program (SIP), “Next generation technology for ocean resources exploration” [Net] [Bib] [Doi]

    2019: 土壌潅水実験で捉えられた比抵抗・IP特性の時間変化とその解釈 [Net] [Bib]
    Temporal change of soil resistivity and IP properties associated with surface irrigation experiments [Net] [Bib]

    2019: 沖縄トラフ東奄西熱水フィールドでの浅層科学掘削(SCG56 P12) [Net] [Bib]
    A shallow scientific drilling at Higashi Ensei Hydrothermal Field, Okinawa Trough (SCG56 P12) [Net] [Bib]

    2019: 無人地上車両を用いた周波数領域電磁探査法システムの応答特性 [Net] [Bib]
    Characteristics of frequency domain electromagnetic survey data using an unmanned ground vehicle [Net] [Bib]

    2019: 石炭の物理的性質に着目した低コスト・簡易な石炭熟成度評価法の開発 [Net] [Bib]

    2019: 石炭の物理的性質に着目した低コスト・簡易な石炭熱成度評価法の開発 [Net] [Bib]

    2020: 3次元比抵抗構造から推定される九重硫黄山周辺の熱水系(SVC44 P08) [Net] [Bib]
    Hydrothermal system around the Iwo yama fumarolic field in Kuju volcano (Japan) inferred from a 3 D resistivity structure model (SVC44 P08) [Net] [Bib]

    2020: Evaluation of a UAV enabled Magnetometer for Geophysical Survey in Volcanic Areas (STT53 05) [Net] [Bib]

    2020: 国際共同観測研究:台湾・大屯火山群の例 [Net] [Bib]
    International collaborative research project: a case for Tatun Volcano Group, Taiwan [Net] [Bib]

    2021: Comparison of airborne magnetic surveys by different types of aircrafts A case of Izu Oshima Volcano (STT34 02) [Net] [Bib]

    2021: UGVを用いたマルチコイル型電磁探査システムの基礎研究 [Net] [Bib]
    Fundamental study of a multi coil electromagnetic exploration system using an unmanned ground vehicle [Net] [Bib]

    2021: 時間領域IP法データを利用したCole Coleパラメータの空間分布推定の試み:秋田県観音堂黒鉱鉱床地域での実施例 [Net] [Bib]
    An attempt to estimate Cole Cole parameters distribution from TDIP fullwave data a case study at Kannondou Kuroko deposit, Akita, Japan [Net] [Bib]

    2021: 無人地上車両(UGV)を用いたマルチコイル型電磁探査システムの開発 [Net] [Bib] [Doi]
    Development of a multi coil electromagnetic exploration system using an unmanned ground vehicle [Net] [Bib] [Doi]

    2021: 赤石鉱山周辺におけるAMT法の熱水鉱床探査への実証試験 [Net] [Bib]
    Verification experiment of AMT method for hydrothermal deposit exploration around the Akeshi mine, Kagoshima prefecture [Net] [Bib]

    2021: 高密度電気探査の含金珪酸鉱探鉱への適用 -鹿児島県岩戸鉱山を例に- [Net] [Bib]
    Application of high density electrical prospecting for Au bearing silicified orebody in the Iwado mine, Kagoshima prefecture [Net] [Bib]

    2022: 北海道洞爺カルデラ周辺における陸 海 湖域接合の広帯域MT法調査(SEM14 08) [Net] [Bib]
    Wideband MT surveys and 3D resistivity modeling by combined use of data from land, sea, and lake areas at Toya Caldera region, Hokkaido, Japan. (SEM14 08) [Net] [Bib]

    2022: 山形県酒田沖最上トラフにおける海洋CSEM調査及び比抵抗構造解析について:表層型メタンハイドレート賦存状況調査(MIS26 07) [Net] [Bib]
    Marine CSEM survey and 3 D resistivity structure inversion at Mogami Trough, offshore Sakata, Yamagata Pref., Japan: investigation of the presence of shallow methane hydrate (MIS26 07) [Net] [Bib]

    2022: 長大測線における効率的な多チャンネルIP計測手法の開発と潜頭性黒鉱鉱床への適用 [Net] [Bib]
    Development of an efficient multi channel IP measurement system for long survey lines and application to a blind black ore deposit [Net] [Bib]

    2023: 時間領域IP法電気探査技術の高度化と潜頭性黒鉱鉱床への適用 [Net] [Bib]
    Technological Advancement of Time Domain Induced Polarization (TDIP) method and its application to a blind black ore deposit [Net] [Bib]

    2023: 海底下の表層型メタンハイドレート賦存状況推定(地質構造・比抵抗構造・LWD統合解釈)の試み [Net] [Bib]
    Challenge to predict the subseafloor shallow methane hydrate distribution, using LWD, acoustic, seismic, and CSEM explorations [Net] [Bib]

    2023: 複合的物理探査による表層型メタンハイドレート賦存形態の把握―最上トラフ酒田海丘(仮称)の例 [Net] [Bib] [Doi]
    Prediction of Distribution of Subseafloor Shallow Methane Hydrate Induced from Integrated Geophysical Investigation A Case Study of the knoll in Mogami Trough [Net] [Bib] [Doi]

    2023: 釜石鉱山周辺におけるAMT法のスカルン鉱床探査への実証試験 [Net] [Bib]
    Verification experiment of audio frequency magnetotelluric method for skarn deposit exploration around the Kamaishi mine, Iwate prefecture [Net] [Bib]

    2023: 鉱物資源探査のためのIP法電気探査技術の高度化 [Net] [Bib]

    2024: IP 法電気探査の高度化に関する技術開発 [Net] [Bib]

    2024: 地下構造解釈の高精度化を目的とした時間領域 IP法電気探査:西仁連川流域でのケーススタディ [Net] [Bib]
    Time domain IP electrical survey for accurate interpretation of subsurface structure: a case study in the Nishi Niren River basin [Net] [Bib]

    2024: 時間領域IP法電気探査技術の高度化:河川堆積層における適用事例 [Net] [Bib]
    Application of advanced time domain IP (TDIP) method in sedimentary layers [Net] [Bib]

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